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Pesticide leaching from two Swedish topsoils of contrasting texture amended with biochar

机译:从两种结构相反的瑞典表土中浸出的农药经过生物炭修正

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摘要

The use of biochar as a soil amendment has recently increased because of its potential for long-term soil carbon sequestration and its potential for improving soil fertility. The objective of this study was to quantify the effects of biochar soil incorporation on pesticide adsorption and leaching for two Swedish topsoils, one clay soil and one loam soil. We used the non-reactive tracer bromide and the pesticides sulfosulfuron, isoproturon, imidacloprid, propyzamid and pyraclostrobin, substances with different mobility in soil. Adsorption was studied in batch experiments and leaching was studied in experiments using soil columns (20 cm high, 20 cm diameter) where 0.01 kg kg~(-1) dw biochar powder originating from wheat residues had been mixed into the top 10 cm. After solute application the columns were exposed to simulated rain three times with a weekly interval and concentrations were measured in the effluent water. The biochar treatment resulted in significantly larger adsorption distribution coefficients (K_d) for the moderately mobile pesticides isoproturon and imidacloprid for the clay soil and for imidacloprid only for the loam soil. Relative leaching of the pesticides ranged from 0.0035% of the applied mass for pyraclostrobin (average K_d = 360 cm~3 g_(-1)) to 5.9% for sulfosulfuron (average K_d = 5.6 cm~3 g~(-1)) There were no significant effects of the biochar amendment on pesticide concentrations in column effluents for the loam soil. For the clay soil concentrations were significantly reduced for isoproturon, imidacloprid and propyzamid while they were significantly increased for the non-mobile fungicide pyraclostrobin suggesting that the transport was facilitated by material originating from the biochar amendment.
机译:生物炭作为土壤改良剂的用途最近有所增加,因为它具有长期固碳的潜力和改善土壤肥力的潜力。这项研究的目的是量化掺入生物炭土壤对两种瑞典表土,一种粘土土壤和一种壤土的农药吸附和浸出的影响。我们使用了非反应性示踪剂溴化物和杀虫剂磺胺磺隆,异丙隆,吡虫啉,丙酰胺和吡菌酯等在土壤中具有不同迁移率的物质。在分批实验中研究了吸附作用,并在实验中使用了土壤柱(高20 cm,直径20 cm)对浸出进行了研究,在土壤柱中,将来自小麦残留物的0.01 kg kg〜(-1)dw生物炭粉末混入了顶部10 cm。溶质施加后,将柱子每隔一周暴露于模拟雨中3次,并测量废水中的浓度。生物炭处理导致中等流动性农药异丙隆和吡虫啉在粘土土壤中的吸附分布系数(K_d)显着增加,而仅在壤土中对吡虫啉的吸附分布系数(K_d)显着增加。农药的相对浸出量为吡咯菌胺的施用量的0.0035%(平均K_d = 360 cm〜3 g _(-1))至磺胺磺隆的施用质量的5.9%(平均K_d = 5.6 cm〜3 g _(-1))。生物炭改良剂对壤土中柱废水中的农药浓度无明显影响。对于粘土,异丙隆,吡虫啉和丙唑胺的土壤浓度显着降低,而非移动性杀菌剂吡菌酯的浓度显着升高,这表明生物炭修正物产生的物质促进了运输。

著录项

  • 来源
    《Journal of Contaminant Hydrology》 |2013年第4期|73-81|共9页
  • 作者单位

    Department of Soil and Environment, Swedish University of Agricultural Sciences (SLU). P.O. Box 7014, 75007 Uppsala, Sweden;

    Department of Soil and Environment, Swedish University of Agricultural Sciences (SLU). P.O. Box 7014, 75007 Uppsala, Sweden;

    Swedish Rural Economy and Agricultural Societies, P.O. Box 402, 75106 Uppsala, Sweden;

    Department of Soil and Environment, Swedish University of Agricultural Sciences (SLU). P.O. Box 7014, 75007 Uppsala, Sweden;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    pesticides; adsorption; leaching; black carbon; biochar; soil;

    机译:农药;吸附;浸出;黑炭;生物炭;土壤;
  • 入库时间 2022-08-17 13:40:54

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